Non-Invasive & Non-Destructive Wireless Technology¯
Unlike other devices which must drill into the concrete and physically connect to the rebar to evaluate corrosion, the is completely non-destructive.
Fast & Accurate Real Time Data in Seconds
Data is collected, analyzed, and stored wirelessly within the mobile app on the tablet provided where it can be easily shared with team members.
Automatic Report Generation Simple
Detailed corrosion evaluation of reinforced concrete structures is presented as contour maps which are accessible in real-time on the tablet.
Recipient of NACE Corrosion Innovation Award
iCOR is the most advanced wireless corrosion measurement device for evaluating the health of reinforced concrete structures. iCOR detects corrosion potential, corrosion rate, and in-situ electrical resistivity. In 2019, the iCOR was presented the Corrosion Innovation Award by the National Association of Corrosion Engineers (NACE).
Applications
Detection of corrosion in reinforcement
Measurement of rebar corrosion rate
Evaluation of corrosion potential of rebar
Measurement of in-situ electrical resistivity
Assessment of concrete durability
Rehabilitation and repair of concrete structures
Software
Real-time contour mapping of corrosion rate, electrical resistivity, and corrosion potential
Accurate non-subjective algorithm-based interpretations
Multiple and directional parameters tested in a single measurement
Easy reporting and data exporting
Hardware
Non-destructive, and non-invasive wireless technology
Measurements obtained and evaluated within seconds
Simple and easy-to-use with minimal training required
Single-person operation device
Tablet included with free Android app
Award-winning patented technology
Patented Technology
iCOR benefits from the patented CEPRA technology that makes it possible to estimate the rate of rebar corrosion through a noninvasive, non-destructive approach. This means that the need to connect the device to the rebar to obtain measurements, which is the case for other commercial devices, is eliminated with the iCOR.
TECHNICAL SPECIFICATIONS :
Testing Time 3 to 30 seconds
Corrosion Rate Range 0 to 500 m / year
Corrosion Potential Range -800 to 200 mV / CSE
Electrical Resistivity Range 0 to 10,000 m
INCLUDED :
Beta unit, Tablet with hands-free carrying support, Data Analysis App., User manual, Connection sponges, USB cable, Conductive solution, Carrying Case.
Sodium gluconate is a versatile chemical compound widely employed in various industrial applications. It is primarily recognized for its role as a chelating agent and concrete admixture. In construction, sodium gluconate is added to concrete mixes to enhance workability and reduce water content, ultimately improving the strength and durability of concrete structures. Its chelating properties make it valuable in cleaning products, as it effectively binds with metal ions and prevents them from causing stains or corrosion. Sodium gluconate is also used in the food and pharmaceutical industries, serving as a buffering agent, sequestrant, and stabilizer in various products. Its multifaceted properties contribute to its significance across different sectors.
Sodium silicate, often referred to as liquid glass, is a versatile inorganic chemical compound with a wide range of industrial applications. It is a colorless, viscous liquid that solidifies when exposed to air or heat. Sodium silicate is used as a binding agent in industries such as construction, where it binds together particles in cement and refractory materials, and in the automotive sector for manufacturing brake linings and foundry molds. It also finds use in detergents and soaps as a corrosion inhibitor and emulsifying agent, and in water treatment processes to control pH levels and precipitate impurities. The varied properties and applications of sodium silicate make it a valuable component in several industries.
Experts in domains pertaining to Fertilizers (Ammonia & Urea), Petrochemicals, Refinery Process Units, Oil Terminals, Gantries, Oil Jetties, Power Plant, Onshore Plant and Pipelines, Offshore, Chemicals Plants, Water Treatment Plants etc; and in handling the E&I for projects from Pre-Feed, Feed, to Detailed Engineering, revamping, Procurement, Pre-commissioning and Commissioning. In Electrical and Instrumentation our experts manage client needs of Automation, Electrical and Communication from Planning to Execution Stage for Brownfield as well as Green Field Projects. For both plants designs -Wired Systems or Wireless (Profibus or Foundation Fieldbus) Competent in Telecom and HSE in projects Fire alarm Systems etc. and provide assistance in obtaining Dubai Civil Defense approvals through our associates Team experts provide Electrical and Instrumentation, Pre-Commissioning & commissioning, Field Engineering support for heavy rotating equipments. Our team has GE certified, Bentley Nevada System specialists. They can also manage of your Control system Support needs. We are also a solution provider for Industrial Internet of Things (IIoT), having a very strong domain knowledge and experienced in the field of Sensors, Automation, Communication, Networking and Machine Data Analysis which are main the support pillars of IoT Solution Provider.
Salisbury's Self-Testing Voltage Detectors allow testing to be continuous and automatic. An intermittent flash and beep confirms the detector is functioning properly. Self-Testing Voltage Detectors are used to verify live or de-energized conductors. These testers may be used with rubber insulating gloves or hot sticks using the splined universal end fitting. Testers indicate the presence of voltage with an extra bright LED light and a distinctive audible signal. It is recommended that the tester be moved closer to the conductor until a warning is indicated, or it touches the conductor, apparatus, or elbow test point. Each tester requires three C batteries (included). Features & Benefits: Do not assume conductors that have been tested de-energized will stay de-energized. Always install proper grounding devices before working. Failure to do so may result in serious injury or death. Dimensions in. (mm): 11 x 3.5 ( 279.4 x 89 )
Specifications: Size: 5.1 x 2.8 x 2.0 in. / 13.1 x 7.0 x 5.2 cm Weight: 11.5 oz. / 328 g Temperature: -4 to 122F / -20 to 50C Readily enables to communicate with Motorola MOTOTRBO Description: The Honeywell Max XT II is a rugged, handheld mobile computer that is designed for use in demanding environments such as warehouses and manufacturing facilities. It features a high-performance processor and a large, easy-to-read display, making it ideal for tasks such as barcode scanning and data collection. The device is built to withstand drops, bumps and exposure to extreme temperatures and is sealed against water and dust. With a long-lasting battery and the ability to run multiple applications simultaneously, the Max XT II is a reliable and efficient solution for mobile data collection and communication in industrial environments. Benefits: Monitors H2S, CO, O2 and combustibles. One-button operation with robust, motorized pump. Compatible with MicroDock II
Ferulic acid has a high content in traditional Chinese medicines such as Ferulic acid Angelica sinensis Chuanxiong Cimicifuga and Suanzaoren One is obtained from the combination of ferulic acid and some small molecules the second is obtained from the plant cell wall and the third is obtained through tissue culture Ferulic acid in plants is often crosslinked with polysaccharides and lignin through ester bonds or selfesterified or etherified to form di ferulic acid Generally alkaline and enzymatic methods are used to break the ester bonds to release ferulic acid and then suitable solvents are used for extraction Item Specifications Results Appearance White or lightyellow acicular crystal Passed Melting point 172 01760C 17261748C Loss on drying 050 016 Residue on ignition 010 004 Heavy metals 10PPM Passed Unspecified impurities 010 Not detected Total 050 Not detected Contents 990 1000 Conclusion Conforms
HPAA is chemically stable, hard to be hydrolyzed, hard to be destroyed by acid or alkali, safety in use, no toxicity, no pollution. HPAA can improve zinc solubility. Its corrosion inhibition ability is 5-8 times better than that of HEDP and EDTMP. When built with low molecular polymers, its corrosion inhibition effect is even better. HPAA is mainly used as cathode corrosion inhibitor in oilfield refill water system in fields such as steel & iron, petrochemcal, power plant and medical industries. When built with zinc salt, the effect is even better.
Traditional antiscalant: It cannot be decomposed into non-toxic substances under the action of microorganisms and fungi, and long-term accumulation will cause potential hazards. Alternatives: Phosphate-free, biodegradable green corrosion and scale inhibitor polyaspartic acid. Polyaspartic acid: the best scale inhibition performance, and has very good biocompatibility and biodegradability, and has a certain corrosion inhibition effect.